Barozai Muhammad Younas Khan, Bashir Farrukh, Muzaffar Shafia, Afzal Saba, Behlil Farida, Khan Muzaffar
Department of Botany, University of Balochistan, Quetta, Pakistan.
Department of Chemistry, Sardar Bahadur Khan Women's University, Quetta, Pakistan.
Gene. 2014 Oct 15;550(1):74-80. doi: 10.1016/j.gene.2014.08.018. Epub 2014 Aug 9.
To study the life processes of all eukaryotes, yeast (Saccharomyces cerevisiae) is a significant model organism. It is also one of the best models to study the responses of genes at transcriptional level. In a living organism, gene expression is changed by chemical stresses. The genes that give response to chemical stresses will provide good source for the strategies in engineering and formulating mechanisms which are chemical stress resistant in the eukaryotic organisms. The data available through microarray under the chemical stresses like lithium chloride, lactic acid, weak organic acids and tomatidine were studied by using computational tools. Out of 9335 yeast genes, 388 chemical stress responding genes were identified and characterized under different chemical stresses. Some of these are: Enolases 1 and 2, heat shock protein-82, Yeast Elongation Factor 3, Beta Glucanase Protein, Histone H2A1 and Histone H2A2 Proteins, Benign Prostatic Hyperplasia, ras GTPase activating protein, Establishes Silent Chromatin protein, Mei5 Protein, Nondisjunction Protein and Specific Mitogen Activated Protein Kinase. Characterization of these genes was also made on the basis of their molecular functions, biological processes and cellular components.
为了研究所有真核生物的生命过程,酵母(酿酒酵母)是一种重要的模式生物。它也是研究基因在转录水平上反应的最佳模式之一。在生物体中,基因表达会因化学胁迫而改变。对化学胁迫做出反应的基因将为工程策略和制定真核生物抗化学胁迫机制提供良好的来源。利用计算工具研究了通过微阵列在氯化锂、乳酸、弱有机酸和番茄碱等化学胁迫下获得的数据。在9335个酵母基因中,鉴定并表征了388个在不同化学胁迫下对化学胁迫有反应的基因。其中一些基因包括:烯醇酶1和2、热休克蛋白82、酵母延伸因子3、β-葡聚糖酶蛋白、组蛋白H2A1和组蛋白H2A2蛋白、良性前列腺增生、ras GTP酶激活蛋白、建立沉默染色质蛋白、Mei5蛋白、不分离蛋白和特定的丝裂原活化蛋白激酶。还根据这些基因的分子功能、生物学过程和细胞成分对其进行了表征。